摘要:
A method of coating an expandable item (10) such as a pressure vessel or process vessel used for instance in the off shore oil industry. A compressible flexible intermediate layer (14) is provided on the item (10), and a support member (18) is embedded in the intermediate layer (14). The support member (18) comprises an open framework base (20) and a plurality of projecting members upstanding therefrom and extending out of the intermediate layer (14) away from the item (10). A thermally insulating coating layer (12) is applied over the intermediate layer (14) such that the projecting members (22) extend into the coating layer (12), and are wholly located in the coating layer (12).
摘要:
The present invention relates to an acryl-based film that includes a first primer layer including a water-dispersible polyurethane resin formed on one surface, and a second primer layer including at least one or more types of a water-dispersible polyester-based resin, a water-dispersible acryl-based resin and a water-dispersible polyester acryl-based resin formed on the opposite surface, and a polarizing plate including the same.
摘要:
The present invention provides: a reinforcing tape which has an excellent conductor-adhesive property and can prevent troubles such as a peeling from a conductor when terminals of the conductor are processed by gold plating or the like, and a flexible flat cable using the same. A flexible flat cable reinforcing tape comprising: an insulating film (A); a layer of an anchor coat (B) having a thickness of 5 to 50 µm on one side of the insulating film (A); and a layer of a hot-melt adhesive (C) having a thickness of 10 to 30 µm in the order thereof.
摘要:
Disclosed are methods, compositions and structures for laminated films. In one example embodiment, disclosed is a structure and composition, which includes a printable coating receptive to electrophotographic ink, an optionally oriented film having a coating side and a laminating side, wherein the printable coating is applied to the coating side, and a substrate dry-laminated to the laminating side.
摘要:
A silicone rubber-fluororesin laminate comprising a substrate, and a vulcanized silicone rubber layer and a fluororesin layer that are sequentially formed on the substrate; wherein the fluororesin layer is formed after an epoxy resin-containing silane based primer layer and a fluororesin based primer layer are sequentially formed on the vulcanized silicone rubber layer, and the epoxy resin-containing silane based primer layer contains 30 to 80 wt% of an epoxy resin and 70 to 20 wt% of a silane coupling agent. The silicone rubber-fluororesin laminate does not cause a reduction not only in the initial adhesion, but also in the adhesion between the vulcanized silicone rubber and the fluororesin even in a heated environment, such as a hot state or long-term heating.
摘要:
The present invention relates to a packaging material for a power storage device including at least a substrate layer, an adhesive layer, a metal foil layer, an anti-corrosion treatment layer, an adhesive resin layer and a thermal bonding resin layer laminated in this order, wherein a thickness of the adhesive layer is in a range of 0.3 to 3 µm, a 10-point average roughness Rzjis (in accordance with JIS B0601) of a surface of the metal foil layer which faces the substrate layer is in a range of 0.3 to 3 µm, and the thickness of the adhesive layer is not less than the 10-point average roughness Rzjis and not more than 3 µm, and a peel strength between the substrate layer and the metal foil layer (in accordance with JIS K6854-3) is in a range of 5 to 12 N/15 mm.
摘要:
Disclosed is a cover film which is used in combination with a carrier tape and comprises at least a base layer (A), an intermediate layer (B), a releasing layer (C) and a heat seal layer (D) that is capable of being heat sealed to the carrier tape. The intermediate layer (B) contains, as a main component, a linear low density polyethylene that is polymerized using a metallocene catalyst and has a tensile modulus of 200 MPa or less. The releasing layer (C) contains a conductive material and also contains, as a main component, a hydrogenated resin of an aromatic vinyl-conjugated diene copolymer having an aromatic vinyl group content of 15-35% by mass. This cover film is small in variation in peel strength when the cover film is released, and is thus capable of suppressing troubles during the releasing in a mounting process.
摘要:
A system and method are provided for forming body structures including energy filters/shutter components, including energy/light directing/scattering layers that are actively electrically switchable. The filters or components are operable between at least a first mode in which the layers, and thus the presentation of the shutter components, appear substantially transparent when viewed from an energy/light incident side, and a second mode in which the layers, and thus the presentation of the energy filters or shutter components, appear opaque to the incident energy impinging on the energy incident side. The differing modes are selectable by electrically energizing, differentially energizing and/or de-energizing electric fields in a vicinity of the energy scattering layers, including electric fields generated between a pair of transparent electrodes sandwiching an energy scattering layer. Refractive indices of transparent particles, and the transparent matrices in which the particles are fixed, are tunable according to the applied electric fields.
摘要:
A system and method are provided for forming body structures including energy filters/shutter components, including energy/light directing/scattering layers that are actively electrically switchable. The filters or components are operable between at least a first mode in which the layers, and thus the presentation of the shutter components, appear substantially transparent when viewed from an energy/light incident side, and a second mode in which the layers, and thus the presentation of the energy filters or shutter components, appear opaque to the incident energy impinging on the energy incident side. The differing modes are selectable by electrically energizing, differentially energizing and/or de-energizing electric fields in a vicinity of the energy scattering layers, including electric fields generated between a pair of transparent electrodes sandwiching an energy scattering layer. Refractive indices of transparent particles, and the transparent matrices in which the particles are fixed, are tunable according to the applied electric fields.